mirror of https://github.com/google/pebble
				
				
				
			
		
			
				
	
	
		
			159 lines
		
	
	
		
			5.3 KiB
		
	
	
	
		
			Python
		
	
	
	
			
		
		
	
	
			159 lines
		
	
	
		
			5.3 KiB
		
	
	
	
		
			Python
		
	
	
	
# Build script for the robert bootloader
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#
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# This bootloader is different than the other bootloaders that are in the platform/boot tree
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# because it's still in development, so it's built as part of the normal firmware build, including
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# using the environments and waftools that are part of the firmware build. At a later point, we'll
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# want to split this out again to be more like the other bootloaders.
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import sys
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import os
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from waflib import Logs
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sys.path.append(os.path.abspath('waftools'))
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import gitinfo
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import objcopy
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waf_dir = sys.path[0]
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sys.path.append(os.path.abspath('waftools'))
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sys.path.append(os.path.join(waf_dir, '../../../tools'))
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def options(opt):
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    opt.load('gcc')
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    opt.add_option('--board', action='store',
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                   choices=['robert_bb', 'robert_bb2', 'cutts_bb', 'robert_evt'],
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                   help='Which board to build for (robert_bb, robert_bb2, cutts_bb, robert_evt)')
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    opt.add_option('--nowatchdog', action='store_true',
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                   help='Disable automatic reboots when watchdog fires')
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    opt.add_option('--display_test', action='store_true', help='Enables the diplsay test loop')
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def configure(conf):
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    conf.env.BOARD = conf.options.board if conf.options.board != 'cutts_bb' else 'robert_bb'
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    # Find our binary tools
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    conf.find_program('arm-none-eabi-gcc', var='CC', mandatory=True)
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    conf.env.AS = conf.env.CC
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    conf.find_program('arm-none-eabi-gcc-ar', var='AR', mandatory=True)
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    conf.load('gcc')
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    conf.load('binary_header')
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    for tool in 'ar objcopy'.split():
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        conf.find_program('arm-none-eabi-' + tool, var=tool.upper(),
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                          mandatory=True)
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    # Set up our compiler configuration
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    CPU_FLAGS = ['-mcpu=cortex-m7', '-mthumb']
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    OPT_FLAGS = ['-Os', '-g']
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    C_FLAGS = [
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        '-std=c11', '-ffunction-sections',
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        '-Wall', '-Wextra', '-Werror', '-Wpointer-arith',
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        '-Wno-unused-parameter', '-Wno-missing-field-initializers',
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        '-Wno-error=unused-function', '-Wno-error=unused-variable',
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        '-Wno-error=unused-parameter', '-Wno-error=unused-but-set-variable',
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        '-Wno-packed-bitfield-compat'
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        ]
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    LINK_FLAGS = ['-Wl,--gc-sections', '-specs=nano.specs']
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    conf.env.append_unique('CFLAGS', CPU_FLAGS + OPT_FLAGS + C_FLAGS)
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    conf.env.append_unique('LINKFLAGS', LINK_FLAGS + CPU_FLAGS + OPT_FLAGS)
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    if conf.options.nowatchdog:
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        conf.env.append_unique('DEFINES', 'NO_WATCHDOG')
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    if conf.options.display_test:
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        conf.env.append_unique('DEFINES', 'DISPLAY_DEMO_LOOP')
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    conf.env.append_unique('DEFINES', [
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        '_REENT_SMALL=1',
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        'USE_STDPERIPH_DRIVER=1',
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        'BOARD_{}=1'.format(conf.env.BOARD.upper())
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        ])
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    # Load up other waftools that we need
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    conf.load('objcopy ldscript', tooldir='waftools')
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    conf.recurse('vendor')
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def size_bootloader(ctx):
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    """prints size information of the firmware"""
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    elf = ctx.path.get_bld().find_node('robert_boot.elf')
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    if elf is None:
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        ctx.fatal('No bootloader ELF found for size')
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    bin = ctx.path.get_bld().find_node('robert_boot.hex')
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    if bin is None:
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        ctx.fatal('No bootloader BIN found for size')
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    import binutils
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    text, data, bss = binutils.size(elf.abspath())
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    total = text + data
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    output = ('{:>7}    {:>7}    {:>7}    {:>7}    {:>7} filename\n'
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              '{:7}    {:7}    {:7}    {:7}    {:7x} robert_boot.elf'.
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              format('text', 'data', 'bss', 'dec', 'hex', text, data, bss, total, total))
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    Logs.pprint('ORANGE', '\n' + output)
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    MAX_SIZE = 32 * 1024
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    if total > MAX_SIZE:
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        ctx.fatal('Bootloader is too large! Size is 0x%x should be less than 0x%x'
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                  % (total, MAX_SIZE))
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    else:
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        Logs.pprint('ORANGE', 'Bootloader: {}/{} bytes used ({} free)\n'.format(total, MAX_SIZE,
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                    MAX_SIZE - total))
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def build(bld):
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    elf_node = bld.path.get_bld().make_node('robert_boot.elf')
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    bld.recurse('vendor')
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    linkflags = ['-Wl,-Map,robert_boot.map']
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    sources = ['src/*.c',
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               'src/drivers/**/*.c',
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               'src/system/**/*.c',
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               'src/util/**/*.c']
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    if bld.env.BOARD in ('robert_bb', 'robert_bb2'):
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        sources.append('src/board/board_robert_bb.c')
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    elif bld.env.BOARD in ('robert_evt',):
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        sources.append('src/board/board_robert_evt.c')
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    else:
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        bld.fatal("Invalid board set %s" % bld.env.BOARD)
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    includes = ['src']
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    _generate_fpga_header(bld)
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    bld(features='subst',
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        source='src/git_version.auto.h.in',
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        target='src/git_version.auto.h',
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        **gitinfo.get_git_revision(bld))
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    bld.program(features="objcopy",
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                source=bld.path.ant_glob(sources),
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                includes=includes,
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                target=elf_node,
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                ldscript='src/stm32f_flash_boot.ld',
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                linkflags=linkflags,
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                objcopy_bfdname='ihex',
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                objcopy_target=elf_node.change_ext('.hex'),
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                use=['stm32_stdlib'])
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    bld(rule=objcopy.objcopy_simple_bin, source='robert_boot.elf', target='robert_boot.bin')
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    bld.add_post_fun(size_bootloader)
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def _generate_fpga_header(bld):
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    bld(features='binary_header',
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        source='../Robert_UL1K_bootloader_bitmap.fpga',
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        target='src/drivers/display/bootloader_fpga_bitstream.auto.h',
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        array_name='s_fpga_bitstream',
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        compressed=True)
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# vim:filetype=python
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