Magdy F. Iskander

31 papers C 2Journal 24Unranked 5
YearRankTypeTitle / Venue / Authors
2026 J jnl
Comput. Appl. Eng. Educ.
Magdy F. Iskander
2026 J jnl
Comput. Appl. Eng. Educ.
Magdy F. Iskander
2026 J jnl
Comput. Appl. Eng. Educ.
Magdy F. Iskander
2025 J jnl
IEEE Trans. Instrum. Meas.
Jill Kobashigawa Nakatsu, Sunny Shuxuan Zhang, Magdy F. Iskander, Zhengqing Yun
2025 J jnl
Comput. Appl. Eng. Educ.
Magdy F. Iskander
2025 conf
VTC2025-Spring
Juinn-Horng Deng, Yuanzhang Xiao, Meng-Lin Ku, Soo Yong Lim, Wen-Yu Pan, Jill Kobashigawa, Zhengqing Yun, Magdy F. Iskander
2025 J jnl
IEEE Access
Juinn-Horng Deng, Yuanzhang Xiao, Meng-Lin Ku, Soo Yong Lim, Jill Kobashigawa Nakatsu, Magdy F. Iskander
2023 J jnl
IEEE Access
Christopher Leong, Yuanzhang Xiao, Zhengqing Yun, Magdy F. Iskander
2022 J jnl
IEEE Access
Magdy F. Iskander, Christopher Leong, Pratiksha Shukla, Scott Clemens, Zhengqing Yun
2021 conf
AIIoT
Douglas Ellman, Pratiksha Shukla, Yuanzhang Xiao, Magdy F. Iskander, Kevin Davies
2021 J jnl
IEEE Access
Qi Ping Soo, Soo Yong Lim, Nurhidayah Rusli, Ka Heng Chong, David Wee Gin Lim, Heng-Siong Lim, Zhengqing Yun, Magdy F. Iskander
2018 J jnl
IEEE Trans. Biomed. Eng.
Magdy F. Iskander, Todd B. Seto, Ruthsenne Gagarin, Eunjung Lim, Farhan A. Qazi
2018 J jnl
Comput. Appl. Eng. Educ.
Magdy F. Iskander
2017 J jnl
IEEE Trans. Veh. Technol.
Xiaolei Jiang, Han Wang, Zhijun Zhang, Xinyu Gao, Linglong Dai, Magdy F. Iskander
2017 J jnl
IEEE Access
Soo Yong Lim, Qi Ping Soo, Ahmed Adam, David Wee Gin Lim, Zhengqing Yun, Magdy F. Iskander
2016 conf
MILCOM
Gui Chao Huang, Magdy F. Iskander, Mahbub Hoque
2016 conf
MILCOM
Darcy A. Bibb, Zhengqing Yun, Magdy F. Iskander
2016 conf
MILCOM
Magdy F. Iskander, Zhengqing Yun, Farhan A. Qazi, Galen H. Sasaki, Asutosh Das
2015 J jnl
IEEE Access
Zhengqing Yun, Magdy F. Iskander
2014 J jnl
IEEE Trans. Biomed. Eng.
Nuri Celik, Ruthsenne Gagarin, Gui Chao Huang, Magdy F. Iskander, Benjamin W. Berg
2013 J jnl
Comput. Appl. Eng. Educ.
Magdy F. Iskander
2011 J jnl
IEICE Trans. Commun.
Juinn-Horng Deng, Nuri Celik, Zhengqing Yun, Magdy F. Iskander
2011 J jnl
J. Univers. Comput. Sci.
Magdy F. Iskander, James Baker, Jill Kobashigawa Nakatsu, Soo Yong Lim, Nuri Celik
2010 C conf
IGARSS
Hyoung-sun Youn, Minh Evans, Jill Kobashigawa, Magdy F. Iskander
2010 C conf
IGARSS
Hyoung-sun Youn, Loon Yip Lee, Magdy F. Iskander
2009 J jnl
IEEE Trans. Instrum. Meas.
Jodie M. Bell, Magdy F. Iskander
2005 J jnl
Comput. Appl. Eng. Educ.
Lan Yu, Ramez Atiya, Magdy F. Iskander, Richard W. Grow
2000 J jnl
Comput. Appl. Eng. Educ.
Susanna Sanz, Magdy F. Iskander, Lan Yu
1993 J jnl
IEEE Trans. Biomed. Eng.
Paul C. Cherry, Magdy F. Iskander
1989 J jnl
IEEE Trans. Biomed. Eng.
Magdy F. Iskander, Amer M. Tumeh
1989 J jnl
IEEE Trans. Biomed. Eng.
Cynthia M. Furse, Magdy F. Iskander
test1.txt
← Index test1.txt plaintext
Truncated preview: showing the first 16384 bytes out of 43286155 total.
{'decompiled': [{'decompiled_function_hash': '1f0dd5f0fe1f0f28d39c8f98bf5eb5b06a98405389873053efd1df2f3ca12179', 'decompiled_function': 'bool z\n\nif (arg3 == *arg2)\n    *arg2 = arg1\n    z = true\nelse\n    *arg2\n    z = false\n\nint64_t result\nresult.b = z\nreturn result', 'decompiled_function_name': 'sync/atomic.CompareAndSwapUintptr', 'decompiled_function_prototype': 'int64_t sync/atomic.CompareAndSwapUintptr(int64_t arg1, int64_t* arg2 @ rax, int64_t arg3 @ rbx)', 'decompiled_function_address': 4198528, 'function_type': 'USER', 'functions_caller': [], 'functions_call': [], 'flattened_score': 0.0, 'mba_score': 0.0, 'disassembled_function_hash': '09e03a03d3a93deea76172fc49c83d407cff050807a0e40d5b25b8848182f060'}, {'decompiled_function_hash': '02b054c1841b6532a667e3e61f8c3363dffbc0893dc9cee31e16e6438a6b32ee', 'decompiled_function': 'int64_t rcx = data_6531e8\nint64_t* internal/abi.kindNames_1 = internal/abi.kindNames\n\nif (arg1 s>= rcx)\n    if (rcx u> 0)\n        internal/abi.kindNames_1[1]\n        return *internal/abi.kindNames_1\n    \n    runtime.panicIndex(0)\nelse if (arg1 u< rcx)\n    internal/abi.kindNames_1[arg1 * 2 + 1]\n    return internal/abi.kindNames_1[arg1 * 2]\n\nruntime.panicIndexU()\nbreakpoint', 'decompiled_function_name': 'internal/abi.Kind.String', 'decompiled_function_prototype': 'int64_t internal/abi.Kind.String(int64_t arg1 @ rax)', 'decompiled_function_address': 4198720, 'function_type': 'USER', 'functions_caller': [], 'functions_call': ['runtime.panicIndex(0)', 'runtime.panicIndexU()'], 'flattened_score': 0.0, 'mba_score': 0.0, 'disassembled_function_hash': 'ba0c8a4a2a408f300d085876a7263294d4b54f4214bc693afe46b9e8378cbf31'}, {'decompiled_function_hash': '03a962adee69ce6e97437b8250ca1e912d9f55f0c17a29845e7e55e9544b5fa9', 'decompiled_function': 'if ((zx.q(*(arg1 + 0x17)) & 0x1f) != 0x11)\n    return 0\n\nreturn *(arg1 + 0x40)', 'decompiled_function_name': 'internal/abi.(*Type).Len', 'decompiled_function_prototype': 'int64_t internal/abi.(*Type).Len(void* arg1 @ rax)', 'decompiled_function_address': 4198816, 'function_type': 'USER', 'functions_caller': [], 'functions_call': [], 'flattened_score': 0.0, 'mba_score': 0.3333333333333333, 'disassembled_function_hash': 'a2843f9a81f7822d6b6b55e43df329ee31eed92dae8dc41ca991d56d7632c1b9'}, {'decompiled_function_hash': 'd782b427b58ad2cf84c6a7c609d1d872f14db0788919434f18e9c183125af6d3', 'decompiled_function': 'void* rsi_4\n\nif ((*(arg1 + 0x14) & 1) == 0)\n    rsi_4 = nullptr\nelse\n    int64_t rsi_3 = (zx.q(*(arg1 + 0x17)) & 0x1f) - 0x11\n    \n    if (rsi_3 u<= 8)\n        jump(internal/abi.(*Type).ExportedMethods.jump7[rsi_3])\n    \n    rsi_4 = arg1 + 0x30\n\nif (rsi_4 == 0)\n    return 0\n\nuint64_t rdx = zx.q(*(rsi_4 + 6))\n\nif (rdx.w == 0)\n    return nullptr\n\nif (rdx u<= 0x10000)\n    return rsi_4 + zx.q(*(rsi_4 + 8))\n\nruntime.panicSlice3Alen()\nbreakpoint', 'decompiled_function_name': 'internal/abi.(*Type).ExportedMethods', 'decompiled_function_prototype': 'void* internal/abi.(*Type).ExportedMethods(void* arg1 @ rax)', 'decompiled_function_address': 4198880, 'function_type': 'USER', 'functions_caller': [], 'functions_call': ['jump(internal/abi.(*Type).ExportedMethods.jump7[rsi_3])', 'runtime.panicSlice3Alen()'], 'flattened_score': 0.0, 'mba_score': 0.125, 'disassembled_function_hash': 'e2558c9cf3ebac3a28dff29dcc0b8918965ca5091e4d5e0361af301ebc9d7fba'}, {'decompiled_function_hash': '407d3d24d10ffe65a17c09aa88e6d7283d00fcdd9df10741af968c91841cc9b2', 'decompiled_function': 'while (&__return_addr u<= *(arg3 + 0x10))\n    runtime.morestack_noctxt.abi0()\n\nuint64_t rcx_1 = zx.q(*(arg1 + 0x17)) & 0x1f\n\nif (rcx_1 == 0x14)\n    return *(arg1 + 0x40)\n\ninternal/abi.(*Type).ExportedMethods(arg1, rcx_1)\nreturn arg2', 'decompiled_function_name': 'internal/abi.(*Type).NumMethod', 'decompiled_function_prototype': 'int64_t internal/abi.(*Type).NumMethod(void* arg1 @ rax, int64_t arg2 @ rbx, void* arg3 @ r14)', 'decompiled_function_address': 4199072, 'function_type': 'USER', 'functions_caller': [], 'functions_call': ['internal/abi.(*Type).ExportedMethods(arg1, rcx_1)', 'runtime.morestack_noctxt.abi0()'], 'flattened_score': 1.0, 'mba_score': 0.14285714285714285, 'disassembled_function_hash': '270037f0c8addf478f25bc075eb0dc05fc54dff87fba6dff63ab8d0555e4929a'}, {'decompiled_function_hash': '9f2a44ad4622a0e2d0e1b439b1d46754301fd5f7060b91e3766482b1383494da', 'decompiled_function': 'if (arg1 == 0)\n    return 0\n\nint64_t rcx = 0\nint64_t rdx = 0\n\nwhile (true)\n    int64_t rbx_2 = rcx * 7\n    *(arg1 + rcx + 1)\n    \n    if (rbx_2 s< 0)\n        runtime.panicshift()\n        breakpoint\n    \n    uint32_t rdi_3 = zx.d(*(arg1 + rcx + 1))\n    rdx += (zx.q(rdi_3) & 0x7f) << rbx_2.b & sbb.q(rbx_2, rbx_2, rbx_2 u< 0x40)\n    \n    if ((rdi_3.b & 0x80) == 0)\n        break\n    \n    rcx += 1\n\nint64_t rcx_1\n\nif (rdx != 1)\n    rcx_1 = 0\nelse\n    rcx_1.b = *(arg1 + 2) == 0x5f\n\nreturn zx.q(rcx_1.d)', 'decompiled_function_name': 'internal/abi.Name.IsBlank', 'decompiled_function_prototype': 'uint64_t internal/abi.Name.IsBlank(void* arg1 @ rax)', 'decompiled_function_address': 4199168, 'function_type': 'USER', 'functions_caller': [], 'functions_call': ['runtime.panicshift()'], 'flattened_score': 0.7692307692307693, 'mba_score': 0.05, 'disassembled_function_hash': '7a693574e5a54de381301402832a96b61c8f4d2a2671d8150e93fb29f8692e0f'}, {'decompiled_function_hash': 'aaadbfaff6f26ed203060269065749f25f44d295aadde2386ab73f8c4a5dd767', 'decompiled_function': 'while (true)\n    int64_t* rsp\n    \n    if (rsp u> *(arg3 + 0x10))\n        *(rsp - 8) = arg2\n        rsp -= 8\n        arg2 = rsp\n        \n        if (arg1 == 0)\n            *rsp\n            return 0\n        \n        void* rcx_1 = nullptr\n        int64_t rdx_1 = 0\n        \n        while (true)\n            void* rsi_2 = rcx_1 * 7\n            *(rcx_1 + arg1 + 1)\n            \n            if (rsi_2 s< 0)\n                break\n            \n            uint32_t r8_3 = zx.d(*(rcx_1 + arg1 + 1))\n            rdx_1 += (zx.q(r8_3) & 0x7f) << rsi_2.b & sbb.q(rsi_2, rsi_2, rsi_2 u< 0x40)\n            \n            if ((r8_3.b & 0x80) == 0)\n                if (rdx_1 s>= 0)\n                    int64_t rcx_4 = neg.q(rcx_1 + arg1 + 2)\n                    \n                    if (rcx_4 u>= rdx_1)\n                        *rsp\n                        return rcx_1 + arg1 + 2\n                    \n                    if (rcx_1 + arg1 != -2)\n                        runtime.panicunsafestringlen(rcx_4)\n                    \n                    runtime.panicunsafestringnilptr()\n                \n                runtime.panicunsafestringlen()\n                break\n            \n            rcx_1 += 1\n        \n        arg1 = runtime.panicshift()\n    \n    rsp[1] = arg1\n    runtime.morestack_noctxt.abi0()\n    arg1 = rsp[1]', 'decompiled_function_name': 'internal/abi.Name.Name', 'decompiled_function_prototype': 'void* internal/abi.Name.Name(int64_t arg1 @ rax, int64_t* arg2 @ rbp, void* arg3 @ r14)', 'decompiled_function_address': 4199296, 'function_type': 'USER', 'functions_caller': [], 'functions_call': ['runtime.panicunsafestringlen(rcx_4)', 'runtime.panicunsafestringnilptr()', 'runtime.panicunsafestringlen()', 'arg1 = runtime.panicshift()', 'runtime.morestack_noctxt.abi0()'], 'flattened_score': 1.0, 'mba_score': 0.029411764705882353, 'disassembled_function_hash': '21ad7fe65b5907f2e2bd82711c3d5cda50e2cda11dd6cb13e472a1879a0f5ee0'}, {'decompiled_function_hash': '6bc616921202fbee6edcbe36548ca6c0123ae51ecb86c0eea217f3889c581d25', 'decompiled_function': 'while (true)\n    int64_t* rsp\n    \n    if (rsp u> *(arg3 + 0x10))\n        *(rsp - 8) = arg2\n        rsp -= 8\n        arg2 = rsp\n        \n        if ((*arg1 & 2) == 0)\n            *rsp\n            return 0\n        \n        void* rcx_1 = nullptr\n        void* rdx_2 = nullptr\n        \n        while (true)\n            void* rsi_2 = rcx_1 * 7\n            *(rcx_1 + arg1 + 1)\n            \n            if (rsi_2 s< 0)\n                break\n            \n            uint32_t r8_3 = zx.d(*(rcx_1 + arg1 + 1))\n            rdx_2 += (zx.q(r8_3) & 0x7f) << rsi_2.b & sbb.q(rsi_2, rsi_2, rsi_2 u< 0x40)\n            \n            if ((r8_3.b & 0x80) == 0)\n                int64_t rcx_3 = 0\n                int64_t rbx_3 = 0\n                \n                while (true)\n                    void* rsi_4 = rdx_2 + rcx_1 + rcx_3\n                    int64_t rdi_3 = rcx_3 * 7\n                    *(arg1 + rsi_4 + 2)\n                    \n                    if (rdi_3 s< 0)\n                        break\n                    \n                    uint32_t r8_9 = zx.d(*(arg1 + rsi_4 + 2))\n                    rbx_3 += (zx.q(r8_9) & 0x7f) << rdi_3.b & sbb.q(rdi_3, rdi_3, rdi_3 u< 0x40)\n                    \n                    if ((r8_9.b & 0x80) == 0)\n                        if (rbx_3 s>= 0)\n                            int64_t rcx_6 = neg.q(arg1 + rsi_4 + 3)\n                            \n                            if (rcx_6 u>= rbx_3)\n                                *rsp\n                                return arg1 + rsi_4 + 3\n                            \n                            if (arg1 + rsi_4 != -3)\n                                runtime.panicunsafestringlen(rcx_6)\n                            \n                            runtime.panicunsafestringnilptr()\n                        \n                        runtime.panicunsafestringlen()\n                        break\n                    \n                    rcx_3 += 1\n                \n                runtime.panicshift()\n                break\n            \n            rcx_1 += 1\n        \n        arg1 = runtime.panicshift()\n    \n    rsp[1] = arg1\n    runtime.morestack_noctxt.abi0()\n    arg1 = rsp[1]', 'decompiled_function_name': 'internal/abi.Name.Tag', 'decompiled_function_prototype': 'void* internal/abi.Name.Tag(char* arg1 @ rax, int64_t* arg2 @ rbp, void* arg3 @ r14)', 'decompiled_function_address': 4199488, 'function_type': 'USER', 'functions_caller': [], 'functions_call': ['runtime.panicunsafestringlen(rcx_6)', 'runtime.panicunsafestringnilptr()', 'runtime.panicunsafestringlen()', 'runtime.panicshift()', 'arg1 = runtime.panicshift()', 'runtime.morestack_noctxt.abi0()'], 'flattened_score': 1.0, 'mba_score': 0.041666666666666664, 'disassembled_function_hash': '0621c0c17af04d429b48b7855fd82627f2e835ec864eaa49d0de3183fd3d9fbf'}, {'decompiled_function_hash': '917d57a1b59aad9ee7b1197909e67f4ee8d39a0d26f2390ceacbbc54bde37a43', 'decompiled_function': 'while (true)\n    void* rsp\n    \n    if (rsp - 0x30 u> *(arg9 + 0x10))\n        *(rsp - 8) = arg6\n        arg6 = rsp - 8\n        rsp -= 0xb0\n        *(rsp + 0xb8) = arg4\n        *(rsp + 0xc8) = arg1\n        \n        if (arg5 s< 0x20000000)\n            if (arg8 s< 0x20000000)\n                __builtin_memset(rsp + 0x84, 0, 0x14)\n                int64_t rdx = arg5\n                int64_t r9_1 = 0\n                \n                while (true)\n                    char r10_2 = arg5.b\n                    arg5 s>>= 7\n                    char r10_3 = r10_2 & 0x7f\n                    \n                    if (arg5 == 0)\n                        if (r9_1 u< 0xa)\n                            *(rsp + r9_1 + 0x8e) = r10_3\n                            int64_t rbx = arg8\n                            int64_t r10_4 = 0\n                            \n                            while (true)\n                                char r11_2 = arg8.b\n                                arg8 s>>= 7\n                                char r11_3 = r11_2 & 0x7f\n                                \n                                if (arg8 == 0)\n                                    if (r10_4 u< 0xa)\n                                        *(rsp + r10_4 + 0x84) = r11_3\n                                        int64_t r11_4 = rdx + r9_1\n                                        int64_t r12_3\n                                        \n                                        if (rbx == 0)\n                                            r12_3 = r9_1 + rdx + 2\n                                        else\n                                            r12_3 = rbx + r10_4 + r11_4 + 3\n                                            arg7 |= 2\n                                        \n                                        *(rsp + 0x78) = rdx\n                                        *(rsp + 0x48) = r9_1 + rdx + 2\n                                        *(rsp + 0x70) = rbx\n                                        *(rsp + 0xb8) = arg4\n                                        *(rsp + 0xc8) = arg1\n                                        *(rsp + 0x68) = r11_4\n                                        *(rsp + 0x50) = r10_4\n                                        *(rsp + 0x58) = r9_1\n                                        \n                                        if (arg3 != 0)\n                                            arg7 |= 8\n                                        \n                                        *(rsp + 0x3f) = arg7.b\n                                        *(rsp + 0x60) = r12_3\n                                        char* result = runtime.makeslice(r12_3)\n                                        void* rcx_1 = *(rsp + 0x60)\n                                        \n                                        if (rcx_1 u> 0)\n                                            *(rsp + 0xa0) = result\n                                            *result = *(rsp + 0x3f)\n                                            void* rsi = rcx_1 - 1\n                                            uint64_t rdx_6 = (zx.q((neg.q(rcx_1 - 1) s>> 0x3f).d) & 1) + result\n                                            void* rdi_2 = *(rsp + 0x58)\n                                            \n                                            if (rdi_2 + 1 s< rsi)\n                                                rsi = rdi_2 + 1\n                                            \n                                            if (rsp + 0x8e != rdx_6)\n                                                runtime.memmove(rsi, rdx_6, rsp + 0x8e)\n                                                result = *(rsp + 0xa0)\n                                                rcx_1 = *(rsp + 0x60)\n                                                rdi_2 = *(rsp + 0x58)\n                                            \n                                            if (rcx_1 u>= rdi_2 + 2)\n                                                void* rdi_3 = rcx_1 - rdi_2 - 2\n                                                void* rdx_9 = ((rdi_2 + 2) & neg.q(rcx_1 - rdi_2 - 2) s>> 0x3f) + result\n                                                void* rsi_6 = *(rsp + 0x78)\n                                                \n                                                if (rsi_6 s< rdi_3)\n                                                    rdi_3 = rsi_6\n                                                \n                                                int128_t* rbx_3 = *(rsp + 0xb8)\n                                                void* rdx_10\n                                                bool cond:0_1\n                                                \n                                                if (rbx_3 != rdx_9)\n                                                    runtime.memmove(rdi_3, rdx_9, rbx_3)\n                                                    rdx_10 = *(rsp + 0x70)\n                                                    cond:0_1 = rdx_10 == 0\n                                                    result = *(rsp + 0xa0)\n                                                    rcx_1 = *(rsp + 0x60)\n                                                else\n                                                    rdx_10 = *(rsp + 0x70)\n                                                    cond:0_1 = rdx_10 == 0\n                                                \n                                                if (cond:0_1)\n                                                    *(rsp + 0xa8)\n                                                    return result\n                                                \n                                                uint64_t rsi_7 = *(rsp + 0x48)\n