| 1 |  | 
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| 2 | from math import log, ceil | 
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| 3 | from mapping import * | 
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| 4 |  | 
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| 5 | ####################################################################################### | 
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| 6 | #   file   : arch.py  (for the tsar_generic_iob architecture) | 
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| 7 | #   date   : may 2014 | 
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| 8 | #   author : Alain Greiner | 
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| 9 | ####################################################################################### | 
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| 10 | #  This file contains a mapping generator for the "tsar_generic_iob" platform. | 
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| 11 | #  This includes both the hardware architecture (clusters, processors, peripherals, | 
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| 12 | #  physical space segmentation) and the mapping of all kernel objects (global vsegs). | 
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| 13 | #  This platform includes 6 external peripherals, accessible through two IO_Bridge | 
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| 14 | #  components located in cluster [0,0] and cluster [x_size-1, y_size-1]. | 
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| 15 | #  Available peripherals are: TTY, BDV, FBF, ROM, NIC, CMA. | 
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| 16 | # | 
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| 17 | #  The "constructor" parameters are: | 
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| 18 | #  - x_size         : number of clusters in a row | 
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| 19 | #  - y_size         : number of clusters in a column | 
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| 20 | #  - nb_procs       : number of processors per cluster | 
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| 21 | #  - nb_ttys        : number of TTY channels | 
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| 22 | #  - fbf_width      : frame_buffer width = frame_buffer heigth | 
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| 23 | # | 
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| 24 | #  The "hidden" parameters (defined below) are: | 
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| 25 | #  - nb_nics        : number of NIC channels | 
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| 26 | #  - x_io           : cluster_io x coordinate | 
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| 27 | #  - y_io           : cluster_io y coordinate | 
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| 28 | #  - x_width        : number of bits for x coordinate | 
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| 29 | #  - y_width        : number of bits for y coordinate | 
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| 30 | #  - paddr_width    : number of bits for physical address | 
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| 31 | #  - irq_per_proc   : number of input IRQs per processor | 
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| 32 | #  - use_ramdisk    : use a ramdisk when True | 
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| 33 | #  - vseg_increment : address increment for replicated peripherals | 
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| 34 | # | 
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| 35 | # Regarding physical memory allocation, there is one allocator per cluster: | 
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| 36 | # - We use only one big physical page (2 Mbytes) for the four boot vsegs, | 
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| 37 | #   allocated in cluster[0,0], identity mapping. | 
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| 38 | # - We use one big page per cluster for the kernel vsegs. | 
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| 39 | #   The kernel_code, kernel_init and kernel_ptab can be replicated in all clusters. | 
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| 40 | #   The kernel_data and kernel_uncdata shared vsegs are only mapped in cluster[0,0]. | 
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| 41 | # - We use 8 small physical pages (4 Kbytes) per cluster for the schedulers. | 
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| 42 | # - We use one big page for each external peripheral in IO cluster, | 
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| 43 | # - We use one small page per cluster for each internal peripheral. | 
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| 44 | ################################################################################### | 
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| 45 |  | 
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| 46 | ######################## | 
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| 47 | def arch( x_size    = 2, | 
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| 48 | y_size    = 2, | 
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| 49 | nb_procs  = 2, | 
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| 50 | nb_ttys   = 1, | 
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| 51 | fbf_width = 128 ): | 
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| 52 |  | 
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| 53 | ### define architecture constants | 
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| 54 |  | 
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| 55 | nb_nics         = 1 | 
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| 56 | nb_cmas         = 2 | 
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| 57 | x_io            = 0 | 
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| 58 | y_io            = 0 | 
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| 59 | x_width         = 4 | 
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| 60 | y_width         = 4 | 
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| 61 | p_width         = 4 | 
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| 62 | paddr_width     = 40 | 
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| 63 | irq_per_proc    = 4 | 
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| 64 | use_ramdisk     = False | 
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| 65 | peri_increment  = 0x10000    # distributed peripherals vbase address increment | 
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| 66 |  | 
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| 67 | ### parameters checking | 
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| 68 |  | 
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| 69 | assert( nb_procs <= (1 << p_width) ) | 
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| 70 |  | 
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| 71 | assert( (x_size == 1) or (x_size == 2) or (x_size == 4) | 
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| 72 | or (x_size == 8) or (x_size == 16) ) | 
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| 73 |  | 
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| 74 | assert( (y_size == 1) or (y_size == 2) or (y_size == 4) | 
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| 75 | or (y_size == 8) or (y_size == 16) ) | 
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| 76 |  | 
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| 77 | assert( (nb_ttys >= 1) and (nb_ttys <= 16) ) | 
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| 78 |  | 
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| 79 | assert( ((x_io == 0) and (y_io == 0)) or | 
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| 80 | ((x_io == x_size-1) and (y_io == y_size-1)) ) | 
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| 81 |  | 
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| 82 | platform_name  = 'tsar_iob_%d_%d_%d_%d_%d' % (x_size,y_size,nb_procs,nb_ttys,fbf_width) | 
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| 83 |  | 
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| 84 | ### define replicated physical segments | 
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| 85 | ### These segments are replicated in all clusters | 
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| 86 |  | 
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| 87 | ram_base = 0x0000000000 | 
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| 88 | ram_size = 0x1000000                   # 16 Mbytes | 
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| 89 |  | 
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| 90 | xcu_base = 0x00B0000000 | 
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| 91 | xcu_size = 0x1000                      # 4 Kbytes | 
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| 92 |  | 
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| 93 | dma_base = 0x00B1000000 | 
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| 94 | dma_size = 0x1000                      # 4 Kbytes | 
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| 95 |  | 
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| 96 | mmc_base = 0x00B2000000 | 
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| 97 | mmc_size = 0x1000                      # 4 Kbytes | 
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| 98 |  | 
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| 99 | ### define physical segments for external peripherals | 
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| 100 | ## These segments are only defined in cluster_io | 
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| 101 |  | 
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| 102 | offset_io = ((x_io << y_width) + y_io) << (paddr_width - x_width - y_width) | 
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| 103 |  | 
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| 104 | bdv_base  = 0x00B3000000 + offset_io | 
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| 105 | bdv_size  = 0x1000                     # 4kbytes | 
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| 106 |  | 
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| 107 | tty_base  = 0x00B4000000 + offset_io | 
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| 108 | tty_size  = 0x4000                     # 16 Kbytes | 
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| 109 |  | 
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| 110 | nic_base  = 0x00B5000000 + offset_io | 
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| 111 | nic_size  = 0x80000                    # 512 kbytes | 
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| 112 |  | 
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| 113 | cma_base  = 0x00B6000000 + offset_io | 
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| 114 | cma_size  = 0x1000 * 2 * nb_nics       # 4 kbytes * 2 * nb_nics | 
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| 115 |  | 
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| 116 | fbf_base  = 0x00B7000000 + offset_io | 
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| 117 | fbf_size  = fbf_width * fbf_width     # fbf_width * fbf_width bytes | 
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| 118 |  | 
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| 119 | pic_base  = 0x00B8000000 + offset_io | 
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| 120 | pic_size  = 0x1000                     # 4 Kbytes | 
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| 121 |  | 
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| 122 | iob_base  = 0x00BE000000 + offset_io | 
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| 123 | iob_size  = 0x1000                     # 4 bytes | 
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| 124 |  | 
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| 125 | rom_base  = 0x00BFC00000 + offset_io | 
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| 126 | rom_size  = 0x4000                     # 16 Kbytes | 
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| 127 |  | 
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| 128 | ### define  bootloader vsegs base addresses and sizes | 
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| 129 | ### We want to pack these 4 vsegs in the same big page | 
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| 130 | ### => boot cost is one BIG page in cluster[0][0] | 
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| 131 |  | 
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| 132 | boot_mapping_vbase   = 0x00000000           # ident | 
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| 133 | boot_mapping_size    = 0x00080000           # 512 Kbytes | 
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| 134 |  | 
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| 135 | boot_code_vbase      = 0x00080000           # ident | 
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| 136 | boot_code_size       = 0x00040000           # 256 Kbytes | 
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| 137 |  | 
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| 138 | boot_data_vbase      = 0x000C0000           # ident | 
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| 139 | boot_data_size       = 0x000C0000           # 768 Kbytes | 
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| 140 |  | 
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| 141 | boot_stack_vbase     = 0x00180000           # ident | 
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| 142 | boot_stack_size      = 0x00080000           # 512 Kbytes | 
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| 143 |  | 
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| 144 | ### define kernel vsegs base addresses and sizes | 
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| 145 | ### code, init, ptab, heap & sched vsegs are replicated in all clusters. | 
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| 146 | ### data & uncdata vsegs are only mapped in cluster[0][0]. | 
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| 147 | ### - We use one BIG page for code vsegs in each cluster. | 
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| 148 | ### - We use one BIG page for ptab vsegs in each cluster. | 
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| 149 | ### - we use one BIG page for heap vsegs in each cluster. | 
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| 150 | ### - We use 2*procs SMALL pages for sched vsegs in each cluster. | 
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| 151 | ### - We use one BIG page for data vseg in cluster[0,0]. | 
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| 152 | ### - we use one SMALL page for uncdata in cluster[0,0]. | 
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| 153 |  | 
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| 154 | kernel_code_vbase    = 0x80000000 | 
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| 155 | kernel_code_size     = 0x00100000           # 1 Mbytes per cluster | 
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| 156 |  | 
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| 157 | kernel_init_vbase    = 0x80100000 | 
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| 158 | kernel_init_size     = 0x00100000           # 1 Mbytes per cluster | 
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| 159 |  | 
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| 160 | kernel_data_vbase    = 0x90000000 | 
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| 161 | kernel_data_size     = 0x00200000           # 2 Mbytes in cluster[0,0] | 
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| 162 |  | 
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| 163 | kernel_uncdata_vbase = 0x90200000 | 
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| 164 | kernel_uncdata_size  = 0x00001000           # 4 Kbytes in cluster[0,0] | 
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| 165 |  | 
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| 166 | kernel_ptab_vbase    = 0xE0000000 | 
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| 167 | kernel_ptab_size     = 0x00200000           # 2 Mbytes per cluster | 
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| 168 |  | 
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| 169 | kernel_heap_vbase    = 0xD0000000 | 
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| 170 | kernel_heap_size     = 0x00200000           # 2 Mbytes per cluster | 
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| 171 |  | 
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| 172 | kernel_sched_vbase   = 0xA0000000 | 
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| 173 | kernel_sched_size    = 0x00002000*nb_procs  # 8 Kbytes per proc per cluster | 
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| 174 |  | 
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| 175 | ### create mapping | 
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| 176 |  | 
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| 177 | mapping = Mapping( name           = platform_name, | 
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| 178 | x_size         = x_size, | 
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| 179 | y_size         = y_size, | 
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| 180 | nprocs         = nb_procs, | 
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| 181 | x_width        = x_width, | 
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| 182 | y_width        = y_width, | 
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| 183 | p_width        = p_width, | 
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| 184 | paddr_width    = paddr_width, | 
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| 185 | coherence      = True, | 
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| 186 | irq_per_proc   = irq_per_proc, | 
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| 187 | use_ramdisk    = use_ramdisk, | 
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| 188 | x_io           = x_io, | 
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| 189 | y_io           = y_io, | 
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| 190 | peri_increment = peri_increment, | 
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| 191 | ram_base       = ram_base, | 
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| 192 | ram_size       = ram_size ) | 
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| 193 |  | 
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| 194 | ###  external peripherals (accessible in cluster[0,0] only for this mapping) | 
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| 195 |  | 
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| 196 | iob = mapping.addPeriph( 'IOB', base = iob_base, size = iob_size, ptype = 'IOB' ) | 
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| 197 |  | 
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| 198 | bdv = mapping.addPeriph( 'BDV', base = bdv_base, size = bdv_size, ptype = 'IOC', subtype = 'BDV' ) | 
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| 199 |  | 
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| 200 | tty = mapping.addPeriph( 'TTY', base = tty_base, size = tty_size, ptype = 'TTY', channels = nb_ttys ) | 
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| 201 |  | 
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| 202 | nic = mapping.addPeriph( 'NIC', base = nic_base, size = nic_size, ptype = 'NIC', channels = nb_nics ) | 
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| 203 |  | 
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| 204 | cma = mapping.addPeriph( 'CMA', base = cma_base, size = cma_size, ptype = 'CMA', channels = nb_cmas ) | 
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| 205 |  | 
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| 206 | fbf = mapping.addPeriph( 'FBF', base = fbf_base, size = fbf_size, ptype = 'FBF', arg = fbf_width ) | 
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| 207 |  | 
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| 208 | rom = mapping.addPeriph( 'ROM', base = rom_base, size = rom_size, ptype = 'ROM' ) | 
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| 209 |  | 
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| 210 | pic = mapping.addPeriph( 'PIC', base = pic_base, size = pic_size, ptype = 'PIC', channels = 32 ) | 
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| 211 |  | 
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| 212 | mapping.addIrq( pic, index = 0,  isrtype = 'ISR_NIC_RX', channel = 0 ) | 
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| 213 | mapping.addIrq( pic, index = 1,  isrtype = 'ISR_NIC_RX', channel = 1 ) | 
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| 214 |  | 
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| 215 | mapping.addIrq( pic, index = 2,  isrtype = 'ISR_NIC_TX', channel = 0 ) | 
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| 216 | mapping.addIrq( pic, index = 3,  isrtype = 'ISR_NIC_TX', channel = 1 ) | 
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| 217 |  | 
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| 218 | mapping.addIrq( pic, index = 4,  isrtype = 'ISR_CMA'   , channel = 0 ) | 
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| 219 | mapping.addIrq( pic, index = 5,  isrtype = 'ISR_CMA'   , channel = 1 ) | 
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| 220 | mapping.addIrq( pic, index = 6,  isrtype = 'ISR_CMA'   , channel = 2 ) | 
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| 221 | mapping.addIrq( pic, index = 7,  isrtype = 'ISR_CMA'   , channel = 3 ) | 
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| 222 |  | 
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| 223 | mapping.addIrq( pic, index = 8,  isrtype = 'ISR_BDV'   , channel = 0 ) | 
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| 224 |  | 
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| 225 | mapping.addIrq( pic, index = 16, isrtype = 'ISR_TTY_RX', channel = 0 ) | 
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| 226 | mapping.addIrq( pic, index = 17, isrtype = 'ISR_TTY_RX', channel = 1 ) | 
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| 227 | mapping.addIrq( pic, index = 18, isrtype = 'ISR_TTY_RX', channel = 2 ) | 
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| 228 | mapping.addIrq( pic, index = 19, isrtype = 'ISR_TTY_RX', channel = 3 ) | 
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| 229 | mapping.addIrq( pic, index = 20, isrtype = 'ISR_TTY_RX', channel = 4 ) | 
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| 230 | mapping.addIrq( pic, index = 21, isrtype = 'ISR_TTY_RX', channel = 5 ) | 
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| 231 | mapping.addIrq( pic, index = 22, isrtype = 'ISR_TTY_RX', channel = 6 ) | 
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| 232 | mapping.addIrq( pic, index = 23, isrtype = 'ISR_TTY_RX', channel = 7 ) | 
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| 233 | mapping.addIrq( pic, index = 24, isrtype = 'ISR_TTY_RX', channel = 8 ) | 
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| 234 | mapping.addIrq( pic, index = 25, isrtype = 'ISR_TTY_RX', channel = 9 ) | 
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| 235 | mapping.addIrq( pic, index = 26, isrtype = 'ISR_TTY_RX', channel = 10 ) | 
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| 236 | mapping.addIrq( pic, index = 27, isrtype = 'ISR_TTY_RX', channel = 11 ) | 
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| 237 | mapping.addIrq( pic, index = 28, isrtype = 'ISR_TTY_RX', channel = 12 ) | 
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| 238 | mapping.addIrq( pic, index = 29, isrtype = 'ISR_TTY_RX', channel = 13 ) | 
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| 239 | mapping.addIrq( pic, index = 30, isrtype = 'ISR_TTY_RX', channel = 14 ) | 
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| 240 | mapping.addIrq( pic, index = 31, isrtype = 'ISR_TTY_RX', channel = 15 ) | 
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| 241 |  | 
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| 242 | ### hardware components replicated in all clusters | 
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| 243 |  | 
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| 244 | for x in xrange( x_size ): | 
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| 245 | for y in xrange( y_size ): | 
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| 246 | cluster_xy = (x << y_width) + y; | 
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| 247 | offset     = cluster_xy << (paddr_width - x_width - y_width) | 
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| 248 |  | 
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| 249 | ram = mapping.addRam( 'RAM', base = ram_base + offset, size = ram_size ) | 
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| 250 |  | 
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| 251 | mmc = mapping.addPeriph( 'MMC', base = mmc_base + offset, size = mmc_size, | 
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| 252 | ptype = 'MMC' ) | 
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| 253 |  | 
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| 254 | dma = mapping.addPeriph( 'DMA', base = dma_base + offset, size = dma_size, | 
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| 255 | ptype = 'DMA', channels = nb_procs ) | 
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| 256 |  | 
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| 257 | xcu = mapping.addPeriph( 'XCU', base = xcu_base + offset, size = xcu_size, | 
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| 258 | ptype = 'XCU', channels = nb_procs * irq_per_proc, arg = 32 ) | 
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| 259 |  | 
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| 260 | # MMC IRQ replicated in all clusters | 
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| 261 | mapping.addIrq( xcu, index = 0, isrtype = 'ISR_MMC' ) | 
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| 262 |  | 
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| 263 | # DMA IRQ replicated in all clusters | 
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| 264 | for i in xrange ( dma.channels ): | 
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| 265 | mapping.addIrq( xcu, index = 1+i, isrtype = 'ISR_DMA', | 
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| 266 | channel = i ) | 
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| 267 |  | 
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| 268 | # processors | 
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| 269 | for p in xrange ( nb_procs ): | 
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| 270 | mapping.addProc( x, y, p ) | 
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| 271 |  | 
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| 272 | ### global vsegs for boot_loader | 
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| 273 | ### we want to pack those 4 vsegs in the same big page | 
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| 274 | ### => same flags CXW_ / identity mapping / non local / big page | 
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| 275 |  | 
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| 276 | mapping.addGlobal( 'seg_boot_mapping', boot_mapping_vbase, boot_mapping_size, | 
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| 277 | 'CXW_', vtype = 'BLOB'  , x = 0, y = 0, pseg = 'RAM', | 
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| 278 | identity = True , local = False, big = True ) | 
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| 279 |  | 
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| 280 | mapping.addGlobal( 'seg_boot_code', boot_code_vbase, boot_code_size, | 
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| 281 | 'CXW_', vtype = 'BUFFER', x = 0, y = 0, pseg = 'RAM', | 
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| 282 | identity = True , local = False, big = True ) | 
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| 283 |  | 
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| 284 | mapping.addGlobal( 'seg_boot_data', boot_data_vbase, boot_data_size, | 
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| 285 | 'CXW_', vtype = 'BUFFER', x = 0, y = 0, pseg = 'RAM', | 
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| 286 | identity = True , local = False, big = True ) | 
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| 287 |  | 
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| 288 | mapping.addGlobal( 'seg_boot_stack', boot_stack_vbase, boot_stack_size, | 
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| 289 | 'CXW_', vtype = 'BUFFER', x = 0, y = 0, pseg = 'RAM', | 
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| 290 | identity = True , local = False, big = True ) | 
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| 291 |  | 
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| 292 | ### Global vsegs kernel_ptab_x_y : big / non local | 
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| 293 | ### one vseg per cluster: name indexed by (x,y) | 
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| 294 | for x in xrange( x_size ): | 
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| 295 | for y in xrange( y_size ): | 
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| 296 | offset = ((x << y_width) + y) * kernel_ptab_size | 
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| 297 | base   = kernel_ptab_vbase + offset | 
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| 298 | mapping.addGlobal( 'seg_kernel_ptab_%d_%d' %(x,y), base, kernel_ptab_size, | 
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| 299 | 'CXW_', vtype = 'PTAB', x = x, y = y, pseg = 'RAM', | 
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| 300 | local = False , big = True ) | 
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| 301 |  | 
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| 302 | ### global vsegs kernel_code, kernel_init : big / local | 
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| 303 | ### replicated in all clusters with the same name & same vbase | 
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| 304 | for x in xrange( x_size ): | 
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| 305 | for y in xrange( y_size ): | 
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| 306 | mapping.addGlobal( 'seg_kernel_code', kernel_code_vbase, kernel_code_size, | 
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| 307 | 'CXW_', vtype = 'ELF', x = x , y = y , pseg = 'RAM', | 
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| 308 | binpath = 'build/kernel/kernel.elf', | 
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| 309 | local = True, big = True ) | 
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| 310 |  | 
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| 311 | mapping.addGlobal( 'seg_kernel_init', kernel_init_vbase, kernel_init_size, | 
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| 312 | 'CXW_', vtype = 'ELF', x = x , y = y , pseg = 'RAM', | 
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| 313 | binpath = 'build/kernel/kernel.elf', | 
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| 314 | local = True, big = True ) | 
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| 315 |  | 
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| 316 | ### global vseg kernel_data : big / non local | 
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| 317 | ### Only mapped in cluster[0][0] | 
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| 318 | mapping.addGlobal( 'seg_kernel_data', kernel_data_vbase, kernel_data_size, | 
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| 319 | 'CXW_', vtype = 'ELF', x = 0, y = 0, pseg = 'RAM', | 
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| 320 | binpath = 'build/kernel/kernel.elf', | 
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| 321 | local = False, big = True ) | 
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| 322 |  | 
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| 323 | ### global vseg kernel_uncdata : small / non local | 
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| 324 | ### Only mapped in cluster[0][0] | 
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| 325 | mapping.addGlobal( 'seg_kernel_uncdata', kernel_uncdata_vbase, kernel_uncdata_size, | 
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| 326 | '__W_', vtype = 'ELF', x = 0, y = 0, pseg = 'RAM', | 
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| 327 | binpath = 'build/kernel/kernel.elf', | 
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| 328 | local = False, big = False ) | 
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| 329 |  | 
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| 330 | ### global vsegs kernel_sched_x_y : small / non local | 
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| 331 | ### one vseg per cluster with name indexed by (x,y) | 
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| 332 | for x in xrange( x_size ): | 
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| 333 | for y in xrange( y_size ): | 
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| 334 | offset = ((x << y_width) + y) * kernel_sched_size | 
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| 335 | mapping.addGlobal( 'seg_kernel_sched_%d_%d' %(x,y), kernel_sched_vbase + offset , kernel_sched_size, | 
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| 336 | 'C_W_', vtype = 'SCHED', x = x , y = y , pseg = 'RAM', | 
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| 337 | local = False, big = False ) | 
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| 338 |  | 
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| 339 | ### global vsegs kernel_heap_x_y : big / non local | 
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| 340 | ### one vseg per cluster with name indexed by (x,y) | 
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| 341 | for x in xrange( x_size ): | 
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| 342 | for y in xrange( y_size ): | 
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| 343 | offset = ((x << y_width) + y) * kernel_heap_size | 
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| 344 | mapping.addGlobal( 'seg_kernel_heap_%d_%d' %(x,y), kernel_heap_vbase + offset , kernel_heap_size, | 
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| 345 | 'C_W_', vtype = 'HEAP', x = x , y = y , pseg = 'RAM', | 
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| 346 | local = False, big = True ) | 
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| 347 |  | 
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| 348 | ### global vsegs for external peripherals : non local / big page | 
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| 349 | mapping.addGlobal( 'seg_iob', iob_base, iob_size, '__W_', | 
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| 350 | vtype = 'PERI', x = 0, y = 0, pseg = 'IOB', | 
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| 351 | local = False, big = True ) | 
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| 352 |  | 
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| 353 | mapping.addGlobal( 'seg_bdv', bdv_base, bdv_size, '__W_', | 
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| 354 | vtype = 'PERI', x = 0, y = 0, pseg = 'BDV', | 
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| 355 | local = False, big = True ) | 
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| 356 |  | 
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| 357 | mapping.addGlobal( 'seg_tty', tty_base, tty_size, '__W_', | 
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| 358 | vtype = 'PERI', x = 0, y = 0, pseg = 'TTY', | 
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| 359 | local = False, big = True ) | 
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| 360 |  | 
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| 361 | mapping.addGlobal( 'seg_nic', nic_base, nic_size, '__W_', | 
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| 362 | vtype = 'PERI', x = 0, y = 0, pseg = 'NIC', | 
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| 363 | local = False, big = True ) | 
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| 364 |  | 
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| 365 | mapping.addGlobal( 'seg_cma', cma_base, cma_size, '__W_', | 
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| 366 | vtype = 'PERI', x = 0, y = 0, pseg = 'CMA', | 
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| 367 | local = False, big = True ) | 
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| 368 |  | 
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| 369 | mapping.addGlobal( 'seg_fbf', fbf_base, fbf_size, '__W_', | 
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| 370 | vtype = 'PERI', x = 0, y = 0, pseg = 'FBF', | 
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| 371 | local = False, big = True ) | 
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| 372 |  | 
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| 373 | mapping.addGlobal( 'seg_pic', pic_base, pic_size, '__W_', | 
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| 374 | vtype = 'PERI', x = 0, y = 0, pseg = 'PIC', | 
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| 375 | local = False, big = True ) | 
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| 376 |  | 
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| 377 | mapping.addGlobal( 'seg_rom', rom_base, rom_size, 'CXW_', | 
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| 378 | vtype = 'PERI', x = 0, y = 0, pseg = 'ROM', | 
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| 379 | local = False, big = True ) | 
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| 380 |  | 
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| 381 | ### global vsegs for internal peripherals : non local / small pages | 
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| 382 | ### allocated in all clusters with name indexed by (x,y) | 
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| 383 | ### as vbase address is incremented by (cluster_xy * vseg_increment) | 
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| 384 | for x in xrange( x_size ): | 
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| 385 | for y in xrange( y_size ): | 
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| 386 | offset = ((x << y_width) + y) * peri_increment | 
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| 387 |  | 
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| 388 | mapping.addGlobal( 'seg_xcu_%d_%d' %(x,y), xcu_base + offset, xcu_size, | 
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| 389 | '__W_', vtype = 'PERI' , x = x , y = y , pseg = 'XCU', | 
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| 390 | local = False, big = False ) | 
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| 391 |  | 
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| 392 | mapping.addGlobal( 'seg_dma_%d_%d' %(x,y), dma_base + offset, dma_size, | 
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| 393 | '__W_', vtype = 'PERI' , x = x , y = y , pseg = 'DMA', | 
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| 394 | local = False, big = False ) | 
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| 395 |  | 
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| 396 | mapping.addGlobal( 'seg_mmc_%d_%d' %(x,y), mmc_base + offset, mmc_size, | 
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| 397 | '__W_', vtype = 'PERI' , x = x , y = y , pseg = 'MMC', | 
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| 398 | local = False, big = False ) | 
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| 399 |  | 
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| 400 | ### return mapping ### | 
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| 401 |  | 
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| 402 | return mapping | 
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| 403 |  | 
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| 404 | ################################# platform test ####################################################### | 
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| 405 |  | 
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| 406 | if __name__ == '__main__': | 
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| 407 |  | 
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| 408 | mapping = arch( x_size    = 2, | 
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| 409 | y_size    = 2, | 
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| 410 | nb_procs  = 2 ) | 
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| 411 |  | 
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| 412 | #   print mapping.netbsd_dts() | 
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| 413 |  | 
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| 414 | print mapping.xml() | 
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| 415 |  | 
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| 416 | #   print mapping.giet_vsegs() | 
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| 417 |  | 
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| 418 |  | 
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| 419 | # Local Variables: | 
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| 420 | # tab-width: 4; | 
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| 421 | # c-basic-offset: 4; | 
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| 422 | # c-file-offsets:((innamespace . 0)(inline-open . 0)); | 
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| 423 | # indent-tabs-mode: nil; | 
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| 424 | # End: | 
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| 425 | # | 
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| 426 | # vim: filetype=python:expandtab:shiftwidth=4:tabstop=4:softtabstop=4 | 
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| 427 |  | 
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